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源自棉秆的生物油改性粘结剂作为柔性路面的一种环保替代粘结剂。

Bio-oil modified binder derived from cotton stalks as an eco-friendly alternative binder for flexible pavements.

作者信息

Ullah Sahib, Zaidi Syed Bilal Ahmed, Khan Diyar, Fareed Ayyaz, Mohd Hasan Mohd Rosli, Milad Abdalrhman, Ali Basit

机构信息

Department of Civil Engineering, University of Engineering and Technology, Taxila, Pakistan.

Doctoral School, Silesian University of Technology, Akademicka 2a, 44-100, Gliwice, Poland.

出版信息

Sci Rep. 2024 Jun 12;14(1):13519. doi: 10.1038/s41598-024-62652-5.

Abstract

Scientists and engineers encounter considerable environmental and economic obstacles stemming from the depletion of crude oil or petroleum fossil fuel reservoirs. To mitigate this challenge, alternative solutions like bio-oil-modified binder derived from biomass have been innovated. This research aims to examine the feasibility of using bio-oil-modified binder obtained from cotton stalk waste as a modifier. Various mechanical and physical tests, including penetration, softening point, ductility, and dynamic shear rheometer tests, were conducted on asphalt binder incorporating 5% and 10% bio-oil-modified binder. Wheel tracker, four-point beam fatigue, and dynamic modulus tests were used to evaluate asphalt mixture performance, including rutting, fatigue, and dynamic stiffness. A rolling bottle test (RBT) and asphalt binder bond strength (BBS) were used to assess moisture susceptibility. A bio-oil-modified binder enhanced ductility and penetration characteristics while reducing the softening point. With the addition of a bio-oil-modified binder, stiffness was reduced in parameters such as complex shear modulus and phase angle. In fact, for both specimens containing 5% and 10% bio-oil-modified binder, statistically significant differences were observed among the measured samples. As a result of this reduced stiffness, the modified asphalt binder is more suitable for low-temperature applications. Additionally, 5.8% increased at 10% and 3.1% at 5% CS. Bio-oil-modified binder, compared to virgin mixtures, supports equal rut resistance. However, the RBT and BBS tests revealed that the addition of bio-oil-modified binder increased the susceptibility of conventional asphalt binder to moisture. The findings suggest that bio-oil-modified binder can enhance asphalt binder properties in low-temperature regions, but further research is needed to improve moisture resistance.

摘要

科学家和工程师面临着因原油或石油化石燃料储备枯竭而产生的重大环境和经济障碍。为了应对这一挑战,人们创新了一些替代解决方案,比如源自生物质的生物油改性粘结剂。本研究旨在探讨使用从棉秆废料中获得的生物油改性粘结剂作为改性剂的可行性。对掺入5%和10%生物油改性粘结剂的沥青粘结剂进行了各种机械和物理测试,包括针入度、软化点、延度和动态剪切流变仪测试。采用车辙试验、四点梁疲劳试验和动态模量试验来评估沥青混合料的性能,包括车辙、疲劳和动态刚度。采用滚动瓶试验(RBT)和沥青粘结剂粘结强度(BBS)来评估水分敏感性。生物油改性粘结剂提高了延度和针入度特性,同时降低了软化点。随着生物油改性粘结剂的加入,复数剪切模量和相位角等参数的刚度降低。事实上,对于含有5%和10%生物油改性粘结剂的两个试样,在测量样本之间观察到了统计学上的显著差异。由于这种刚度降低,改性沥青粘结剂更适合低温应用。此外,在10%的棉秆含量下增加了5.8%,在5%的棉秆含量下增加了3.1%。与原始混合料相比,生物油改性粘结剂具有同等的抗车辙能力。然而,RBT和BBS试验表明,生物油改性粘结剂的加入增加了传统沥青粘结剂对水分的敏感性。研究结果表明,生物油改性粘结剂可以增强低温地区沥青粘结剂的性能,但需要进一步研究以提高其抗湿性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58ea/11169230/7a7f5969cc89/41598_2024_62652_Fig1_HTML.jpg

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